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Investigating Activated Sludge Microbial Population Efficiency in Heavy Metals Removal from Compost Leachate

机译:调查从堆肥渗滤液中去除重金属的活性污泥微生物种群效率

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摘要

Solid waste production has increased in recent years. Many studies have shown that generated leachate from solid waste contains a high concentration of heavy metals. Their removal efficiency from leachate was investigated in aerobic suspended and attached growth systems in lab-scale within 72 hours of aeration. All of the materials used were analytical grade (Merck). Maximum efficiency of the attached growth system in removal of BOD, and COD was, respectively, 80% and 78.28%. Maximum removal efficiency for both attached and suspended growth was related to lead, and minimum removal efficiency was related to vanadium for the attached growth, and cadmium for suspended growth. Heavy metals removal efficiencies in attached growth from max to min were lead, iron, manganese, cobalt, zinc, mercury, magnesium, copper, chromium, nickel, cadmium, and vanadium, respectively; and the removal efficiencies for suspended growth from max to min were lead, manganese, iron, zinc, copper, magnesium, cobalt, mercury, chromium, nickel, vanadium, and cadmium, respectively. Generally it can be concluded that both systems are suitable for young leachate treatment, but to satisfy environmental discharge standards post treatment will be necessary.
机译:近年来,固体废物的产生有所增加。许多研究表明,从固体废物中产生的渗滤液含有高浓度的重金属。在曝气72小时内,在实验室规模的需氧悬浮和附着生长系统中研究了它们从渗滤液中的去除效率。使用的所有材料均为分析纯(Merck)。附着生长系统去除BOD和COD的最大效率分别为80%和78.28%。附着生长和悬浮生长的最大去除效率与铅相关,最小去除效率与附着生长的钒和镉与悬浮生长的相关。从最大生长到最小,重金属去除效率分别为铅,铁,锰,钴,锌,汞,镁,铜,铬,镍,镉和钒。从最大到最小悬浮生长的去除效率分别为铅,锰,铁,锌,铜,镁,钴,汞,铬,镍,钒和镉。通常可以得出结论,这两种系统均适用于年轻的渗滤液处理,但是要满足环境排放标准,则必须进行后处理。

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